Martin L. Gorbaty - Westfield NJ, US Bruce R. Cook - Aurora IL, US David T. Ferrughelli - Flemington NJ, US Jason B. English - Baton Rouge LA, US Steven S. Lowenthal - Flanders NJ, US
Assignee:
ExxonMobil Research and Engineering Company - Annandale NJ
The present invention relates to a process for the selective conversion of hydrocarbon feed having a Conradson Carbon Residue content of 0 to 6 wt %, based on the hydrocarbon feed. The hydrocarbon feed is treated in a two-step process. The first is thermal conversion and the second is catalytic cracking of the products of the thermal conversion. The present invention results in a process for increasing the distillate production from a hydrocarbon feedstream for a fluid catalytic cracking unit. The resulting product slate from the present invention can be further varied by changing the conditions in the thermal and catalytic cracking steps as well as by changing the catalyst in the cracking step.
Process For Flexible Vacuum Gas Oil Conversion Using Divided Wall Fractionation
Martin L. Gorbaty - Westfield NJ, US Bruce R. Cook - Aurora IL, US David T. Ferrughelli - Flemington NJ, US Jason B. English - Naperville IL, US Steven S. Lowenthal - Flanders NJ, US
Assignee:
ExxonMobil Research and Engineering Company - Annandale NJ
This invention relates to a process for the selective conversion of vacuum gas oil. The vacuum gas oil is treated in a two step process. The first is thermal conversion and the second is catalytic cracking of the products of thermal conversion. The product slate can be varied by changing the conditions in the thermal and catalytic cracking steps as well as by changing the catalyst in the cracking step. The combined products from thermal and catalytic cracking are separated in a divided wall fractionator.
A method for optimizing a desalting process in which a hydrocarbon feedstock is passed to a desalter through a line under a set of conditions, the hydrocarbon feedstock containing a hydrocarbon fluid, water and a salt, said method comprising: obtaining spectra of the hydrocarbon feedstock under a plurality of environments in the line; comparing the spectra; and based on the comparison of the spectra, either modifying or maintaining the set of conditions under which the hydrocarbon feedstock is passed to the desalter; wherein the spectra are obtained using neutron backscattering.
- Houston TX, US Ming Wei - Bolingbrook IL, US Jason English - Aurora IL, US Craig Hackett - Aurora IL, US
Assignee:
BP Corporation North America Inc. - Houston TX
International Classification:
C10G 17/04 C10G 17/06 G01N 33/28
Abstract:
A method comprises correlating—in a system which comprises a non-aqueous phase comprising a hydrocarbon fluid, and an aqueous phase—partitioning levels of a basic contaminant and/or an acid of interest into the aqueous phase with the pH of the aqueous phase. The partitioning levels of the basic contaminant and the acid of interest, as well as the pH of the aqueous phase, are obtained under conditions which are representative of those used in a partitioning process in which a basic contaminant is removed from a hydrocarbon fluid.The correlations may be used in a method for selecting an acidic environment for use in a partitioning process, for estimating corrosion risk downstream of a partitioning process, or for controlling a partitioning process.
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